AI Article Synopsis

  • - The GPHN gene encodes for gephyrin, a protein essential for organizing glycine and GABA receptors at inhibitory synapses in the brain, which is linked to neurodevelopmental disorders like autism and schizophrenia.
  • - Research shows that abnormalities in GPHN mRNA, potentially caused by stress during epilepsy, may lead to seizures and other related conditions.
  • - The study identifies six individuals with neurodevelopmental diagnoses who have unique deletions in the GPHN gene, suggesting these deletions may impact gephyrin's function and contribute to various disorders.

Article Abstract

The GPHN gene codes for gephyrin, a key scaffolding protein in the neuronal postsynaptic membrane, responsible for the clustering and localization of glycine and GABA receptors at inhibitory synapses. Gephyrin has well-established functional links with several synaptic proteins that have been implicated in genetic risk for neurodevelopmental disorders such as autism spectrum disorder (ASD), schizophrenia and epilepsy including the neuroligins (NLGN2, NLGN4), the neurexins (NRXN1, NRXN2, NRXN3) and collybistin (ARHGEF9). Moreover, temporal lobe epilepsy has been linked to abnormally spliced GPHN mRNA lacking exons encoding the G-domain of the gephyrin protein, potentially arising due to cellular stress associated with epileptogenesis such as temperature and alkalosis. Here, we present clinical and genomic characterization of six unrelated subjects, with a range of neurodevelopmental diagnoses including ASD, schizophrenia or seizures, who possess rare de novo or inherited hemizygous microdeletions overlapping exons of GPHN at chromosome 14q23.3. The region of common overlap across the deletions encompasses exons 3-5, corresponding to the G-domain of the gephyrin protein. These findings, together with previous reports of homozygous GPHN mutations in connection with autosomal recessive molybdenum cofactor deficiency, will aid in clinical genetic interpretation of the GPHN mutation spectrum. Our data also add to the accumulating evidence implicating neuronal synaptic gene products as key molecular factors underlying the etiologies of a diverse range of neurodevelopmental conditions.

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Source
http://dx.doi.org/10.1093/hmg/ddt056DOI Listing

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